Photosensitivity of the Er/Yb-Codoped Schott IOG1 Phosphate Glass Using 248 nm, Femtosecond, and Picosecond Laser Radiation

S. Pissadakis, I. Michelakaki
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引用次数: 3

Abstract

The effect of 248 nm laser radiation, with pulse duration of 5 picoseconds, 500 femtoseconds, and 120 femtoseconds, on the optical properties and the Knoop hardness of a commercial Er/Yb-codoped phosphate glass is presented here. Refractive index changes of the order of few parts of 10-4 are correlated with optical absorption centers induced in the glass volume, using Kramers-Kroning relationship. Accordingly, substantially lower refractive index changes are measured in volume Bragg gratings inscribed in the glass, indicating that, in addition to the optical density changes, volume dilation changes of negative sign may also be associated with the 248 nm ultrafast irradiation. The Knoop hardness experimental results reveal that the glass matrix undergoes an observable initial hardening and then a reversing softening and volume dilation process for modest accumulated energy doses, where the Knoop hardness follows a nonmonotonic trend. Comparative results on the Knoop hardness trend are also presented for the case of 193 nm excimer laser radiation. The above findings denote that the positive or negative evolution of refractive index changes induced by the 248 nm ultrafast radiation in the glass is dominated by the counteraction of the color center formation and the volume modification effects.
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利用248 nm、飞秒和皮秒激光辐射研究Er/ yb共掺肖特IOG1磷酸盐玻璃的光敏性
研究了脉冲时间分别为5皮秒、500飞秒和120飞秒的248nm激光辐射对商用铒镱共掺磷酸盐玻璃光学性能和努氏硬度的影响。利用Kramers-Kroning关系,将10-4的几个数量级的折射率变化与玻璃体中诱导的光学吸收中心进行了关联。因此,在玻璃内嵌的体积布拉格光栅中测量到的折射率变化非常小,这表明除了光密度变化外,248 nm超快辐照还可能导致负号的体积膨胀变化。努普硬度实验结果表明,在适当的能量累积剂量下,玻璃基体经历了一个可观察到的初始硬化过程,然后是一个反向软化和体积膨胀过程,其中努普硬度遵循非单调趋势。并对193 nm准分子激光辐照下的努氏硬度变化趋势进行了比较。上述结果表明,248 nm超快辐射对玻璃折射率变化的正向或负向演化主要受色心形成和体积修饰效应的抵消作用支配。
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